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Thermoeconomic diagnosis: Zooming strategy applied to highly complex energy systems. Part 1: Detection and localization of anomalies

机译:热经济诊断:缩放策略适用于高度复杂的能源系统。第1部分:异常的检测和定位

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This paper presents a summary of our most recent advances in Thermoeconomic Diagnosis, developed during the last three years, and how they can be integrated in a zooming strategy oriented toward the operational diagnosis of complex systems. In fact, this paper can be considered a continuation of the work presented at the International Conference ECOS'99 in which the concepts of malfunction (intrinsic and induced) and dysfunction were analyzed in detail. These concepts greatly facilitate and simplify the analysis, the understanding, and the quantification of how the presence of an anomaly, or malfunction, affects the behavior of the other plant devices and of the whole system. However, what remains unresolved is the so-called inverse problem of diagnosing, i.e., given two states of the plant (actual and reference operating conditions), find the causes of deviation of the actual conditions with respect to the reference conditions. The present paper tackles this problem and describes significant advances in addressing how to locate the actual causes of malfunctions, based on the application of procedures for filtering induced effects that hide the real causes of degradation. In this paper a progressive zooming thermoeconomic diagnosis procedure, which allows one to concentrate the analysis in an ever more specific zone is described and applied to a combined cycle. In an accompanying paper the accuracy of the diagnosis results is discussed, depending on choice of the thermoeconomic model.
机译:本文概述了过去三年中我们在热经济诊断方面的最新进展,以及如何将它们集成到面向复杂系统操作诊断的缩放策略中。实际上,可以认为本文是在ECOS'99国际会议上提出的工作的延续,其中详细分析了故障(本征和诱发的)和功能障碍的概念。这些概念极大地促进和简化了对异常或故障的影响如何影响其他工厂设备和整个系统的行为的分析,理解和量化。然而,仍未解决的是所谓的诊断逆问题,即,给定工厂的两种状态(实际和参考操作条件),找出实际条件相对于参考条件的偏离原因。本论文解决了这个问题,并基于应用程序过滤了导致效果下降的原因的方法,从而发现了导致故障的真正原因,这些进展取得了重大进展。在本文中,描述了一种逐步缩放的热经济诊断程序,该程序允许人们将分析集中在一个更加特定的区域,并将其应用于联合循环。在随附的论文中,讨论了诊断结果的准确性,具体取决于热经济模型的选择。

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